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74LVQ245MSTN/a567avaiLOW VOLTAGE OCTAL BUS TRANSCEIVER (3-STATE)


74LVQ245M ,LOW VOLTAGE OCTAL BUS TRANSCEIVER (3-STATE)Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional o ..
74LVQ245QSC ,Low Voltage Octal Bidirectional Transceiver with 3-STATE Inputs/OutputsElectrical CharacteristicsV T = +25°C T = −40°C to +85°CCC A ASymbol Parameter Units Conditions (V) ..
74LVQ245SJ ,Low Voltage Octal Bidirectional Transceiver with 3-STATE Inputs/Outputsapplications. Current sinking capability is 12 mA at both the

74LVQ245M
LOW VOLTAGE OCTAL BUS TRANSCEIVER (3-STATE)
1/9July 2001 HIGH SPEED: PD = 5.7 ns (TYP .) at VCC = 3.3 V COMPATIBLE WITH TTL OUTPUTS LOW POWER DISSIPATION:
ICC = 5 μA (MAX.) at TA=25°C LOW NOISE: OLP = 0.5V (TYP .) at VCC = 3.3V 75Ω TRANSMISSION LINE DRIVING
CAPABILITY SYMMETRICAL OUTPUT IMPEDANCE:
|IOH| = IOL = 12mA (MIN) at VCC = 3.0 V PCI BUS LEVELS GUARANTEED AT 24 mA BALANCED PROPAGATION DELAYS: PLH ≅ t PHL OPERATING VOLTAGE RANGE:
VCC(OPR) = 2V to 3.6V (1.2V Data Retention) PIN AND FUNCTION COMPATIBLE WITH
74 SERIES 245 IMPROVED LATCH-UP IMMUNITY
DESCRIPTION

The 74LVQ245 is a low voltage CMOS OCTAL
BUS TRANSCEIVER (3-STATE fabricated with
sub-micron silicon gate and double-layer metal
wiring C2 MOS technology. It is ideal for low power
and low noise 3.3V applications.
This IC is intended for two-way asynchronous
communication between data buses and the
direction of data transmission is determined by
DIR input. The enable input G can be used to
disable the device so that the buses are effectively
isolated.
All inputs and outputs are equipped with
protection circuits against static discharge, giving
them 2KV ESD immunity and transient excess
voltage.
All floating bus terminals during High Impedance
State must be held HIGH or LOW.
74LVQ245

LOW VOLTAGE CMOS OCTAL BUS
TRANSCEIVER WITH (3-STATE)
PIN CONNECTION AND IEC LOGIC SYMBOLS
ORDER CODES
74LVQ245
2/9
INPUT EQUIVALENT CIRCUIT PIN DESCRIPTION
TRUTH TABLE

X : Don‘t Care
Z : High Impedance
ABSOLUTE MAXIMUM RATINGS

Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is
not implied
RECOMMENDED OPERATING CONDITIONS

1) Truth Table guaranteed: 1.2V to 3.6V
2) VIN from 0.8V to 2V
74LVQ245
3/9
DC SPECIFICATIONS

1) Maximum test duration 2ms, one output loaded at time
2) Incident wave switching is guaranteed on transmission lines with impedances as low as 75Ω
DYNAMIC SWITCHING CHARACTERISTICS

1) Worst case package.
2) Max number of outputs defined as (n). Data inputs are driven 0V to 3.3V, (n-1) outputs switching and one output at GND.
3) Max number of data inputs (n) switching. (n-1) switching 0V to 3.3V. Inputs under test switching: 3.3V to threshold (VILD), 0V to threshold
(VIHD), f=1MHz.
74LVQ245
4/9
AC ELECTRICAL CHARACTERISTICS (C
L = 50 pF, RL = 500 Ω, Input tr = tf = 3ns)
1) Skew is defined as the absolute value of the difference between the actual propagation delay for any two outputs of the same device switch-
ing in the same direction, either HIGH or LOW (tOSLH = |tPLHm - tPLHn|, tOSHL = |tPHLm - tPHLn|)
2) Parameter guaranteed by design
(*) Voltage range is 3.3V ± 0.3V
CAPACITIVE CHARACTERISTICS

1) CPD is defined as the value of the IC’s internal equivalent capacitance which is calculated from the operating current consumption without
load. (Refer to Test Circuit). Average operating current can be obtained by the following equation. ICC(opr) = CPD x VCC x fIN + ICC/8 (per circuit)
74LVQ245
5/9
TEST CIRCUIT

CL = 50pF or equivalent (includes jig and probe capacitance)
RL = R1 = 500Ω or equivalent
RT = ZOUT of pulse generator (typically 50Ω)
WAVEFORM 1 : PROPAGATION DELAYS (f=1MHz; 50% duty cycle)
74LVQ245
6/9
WAVEFORM 2: OUTPUT ENABLE AND DISABLE TIME (f=1MHz; 50% duty cycle)
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